基于电力电子的任务轮廓仿真系统中环流纹波的建模与分析

S. Xia, K. Ma, Aiguo Wang, Xinqiang Li, Luhai Zheng
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引用次数: 0

摘要

基于电力电子的任务轮廓仿真正在成为验证电力电子变换器先进特性的一种流行解决方案。为了提高测试效率,被测变换器和仿真变换器通常采用同一电源供电。在这种结构下,测试系统中存在零序电流路径。因此,可能会引入不希望的电流谐波、不稳定和额外的损耗。基本上,这些零序谐波可以分为与基频相关的低阶谐波和与开关频率相关的高阶纹波。本文着重分析了高阶波纹产生的机理和影响。会引起采样畸变,从而通过一定的控制策略引发控制误差。仿真和实验验证了分析的正确性。对避免采样失真和控制误差的可能解决方案进行了总结和讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling and Analysis of Circulating Current Ripples in Power-Electronics-Based Mission Profile Emulation System
Power-electronics-based mission profile emulation is becoming a popular solution to validate advanced features of power electronic converters. In order to improve the testing efficiency, the converter under test and the emulating converter are normally powered by the same power supply. Under this structure, there exists zero-sequence current path in the testing system. Thus, undesired current harmonics, instability, and extra losses may be introduced. Basically, these zero-sequence harmonics can be divided into low-order harmonics related to the fundamental frequency, and high-order ripples related to the switching frequency. The mechanisms and influences of the high-order ripples are focused on and analyzed in this paper. Sampling distortions will be induced, and thus, control errors will be triggered by certain control strategies. Simulations and experiments are provided to validate the analysis. Possible solutions to avoid the sampling distortions and control errors are also concluded and discussed.
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